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基于生物的壳聚糖/聚苯并恶嗪交联膜:在水介质中的制备及协同改善热学和力学性能。

Biobased chitosan/polybenzoxazine cross-linked films: preparation in aqueous media and synergistic improvements in thermal and mechanical properties.

机构信息

Department of Chemical Engineering, Case Western Reserve University , Cleveland, Ohio 44106-7217, United States.

出版信息

Biomacromolecules. 2013 Jun 10;14(6):1806-15. doi: 10.1021/bm4002014. Epub 2013 May 14.

Abstract

A novel class of polymer blends has been prepared from main-chain-type benzoxazine polymer (MCBP) and chitosan (CTS), a modified biomacromolecule. A water-soluble, main-chain-type benzoxazine polymer, MCBP(BA-tepa), was synthesized from the reaction of bisphenol A (BA), tetraethylenepentamine (TEPA) and formalin. The structure of the MCBP(BA-tepa) was confirmed by proton nuclear magnetic resonance spectroscopy ((1)H NMR) and Fourier transform infrared spectroscopy (FT-IR). The polymer blends were prepared by mixing MCBP(BA-tepa) and CTS in aqueous acetic acid solution (1%). The CTS/MCBP(BA-tepa) films are cross-linked by thermal treatment via the ring-opening polymerization of benzoxazine structures in the main chain to produce an AB-cross-linked network. Differential scanning calorimetry (DSC) and FT-IR were used to study the effects of CTS on the polymerization behavior of benzoxazine. Hydrogen bonding between polybenzoxazine and CTS structures was also observed. The mechanical and thermal properties of cross-linked CTS/MCBP(BA-tepa) films were evaluated, and the results showed unusual levels of synergism. In particular, the tensile strength and thermal stability were significantly enhanced in a nonlinear fashion.

摘要

一类新型聚合物共混物由主链型苯并恶嗪聚合物(MCBP)和壳聚糖(CTS)制备而成,壳聚糖是一种经过修饰的生物大分子。通过双酚 A(BA)、四乙烯五胺(TEPA)和福尔马林的反应,合成了一种水溶性的主链型苯并恶嗪聚合物 MCBP(BA-tepa)。通过质子核磁共振波谱(1H NMR)和傅里叶变换红外光谱(FT-IR)证实了 MCBP(BA-tepa)的结构。聚合物共混物是通过在醋酸水溶液(1%)中混合 MCBP(BA-tepa)和 CTS 制备而成。CTS/MCBP(BA-tepa)薄膜通过热处理进行交联,通过主链中环氧化合物开环聚合生成 AB 交联网络。通过差示扫描量热法(DSC)和 FT-IR 研究了 CTS 对苯并恶嗪聚合行为的影响。还观察到聚苯并恶嗪与 CTS 结构之间的氢键。交联 CTS/MCBP(BA-tepa)薄膜的力学和热性能进行了评估,结果表明存在不寻常的协同作用。特别是,拉伸强度和热稳定性以非线性方式得到显著提高。

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